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旋转体结构有限元网格自动划分法 被引量:1
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作者 许贤泽 《贵州工业大学学报(自然科学版)》 2000年第3期1-4,共4页
用有限元法对进行结构和自由度体系进行分析 ,其网格的生成是建立有限元模型的重要技术 ,利用分块分割法对网格自动划分 ,从而形成有限元网格模型 。
关键词 有限元法 分块分割 网格 旋转体结构
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自动超声波探伤机旋转体结构分析
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作者 谢晓慧 《包钢科技》 2015年第5期10-12,共3页
文章介绍了两种不同旋转体结构的自动超声波探伤机在探伤过程中,由于旋转体结构不同产生的不同探伤影响因素,通过对影响因素的分析和研究,避免在生产中由于旋转体结构的原因造成钢管漏、误报的发生,提高产品质量。
关键词 自动超声波探伤机 旋转体结构 影响因素
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断面形心法在防波堤项目工程计量中的应用
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作者 高钢锤 陈贵侣 《水运工程》 北大核心 2013年第3期204-207,212,共5页
在防波堤项目中,常常遇到旋转体结构的工程计量问题,断面形心法可以较好地解决这类问题。首先从数学原理上证明了形心法的正确性,接着分析了它的适用范围和对象以及确定形心和断面密度的方法,最后用一个实际案例进一步阐述了它的具体应... 在防波堤项目中,常常遇到旋转体结构的工程计量问题,断面形心法可以较好地解决这类问题。首先从数学原理上证明了形心法的正确性,接着分析了它的适用范围和对象以及确定形心和断面密度的方法,最后用一个实际案例进一步阐述了它的具体应用和优点。借助计算机程序,这种方法可以大大提高工作效率,减少审批时间,从而更好地创造效益。 展开更多
关键词 旋转体结构 土石方 工程计量 形心 断面形心法
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Study on terahertz spectra of SO_2 and H_2S 被引量:3
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作者 CAI He WANG Dong SHEN JingLing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第4期685-690,共6页
The spectral characteristics of air pollution gas sulfur dioxide and hydrogen sulfide has been studied experimentally and theo-retically in the range of 0.2-2.6 THz. The gases absorption spectra of sulfur dioxide and ... The spectral characteristics of air pollution gas sulfur dioxide and hydrogen sulfide has been studied experimentally and theo-retically in the range of 0.2-2.6 THz. The gases absorption spectra of sulfur dioxide and hydrogen sulfide, as measured by terahertz Time-Domain Spectroscopy (THz-TDS) technique, show equi-spaced absorption peaks. The peak intervals are varied for different gas and may relate with the molecule structures and rotation modes. We have calculated the intervals of rotational transition frequency according to the gases molecule structure and the rotational modes. The results are consistent with experimental results which confirm the suggestion that the absorption is coming from the molecular rotational transition. The study suggests a technique to detect air pollutants by THz-TDS and the rotational modes of gas molecules. 展开更多
关键词 SPECTROSCOPY terahertz wave rotational mode gas molecule
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Ground and Low-Lying Collective States of Rotating Three-Boson System
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作者 Mohd.Imran M.A.H.Ahsan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第4期473-482,共10页
The ground and low-lying collective states of a rotating system of N=3 bosons harmonically confined in quasi-two-dimension and interacting via repulsive finite-range Gaussian potential is studied in weakly to moderate... The ground and low-lying collective states of a rotating system of N=3 bosons harmonically confined in quasi-two-dimension and interacting via repulsive finite-range Gaussian potential is studied in weakly to moderately interacting regime.The N-body Hamiltonian matrix is diagonalized in subspaces of quantized total angular momenta 0 ≤ L ≤ 4N to obtain the ground and low-lying eigenstates.Our numerical results show that breathing modes with N-body eigenenergy spacing of 2hω⊥,known to exist in strictly 2D system with zero-range(δ-function) interaction potential,may as well exist in quasi-2D system with finite-range Gaussian interaction potential.To gain an insight into the many-body states,the von Neumann entropy is calculated as a measure of quantum correlation and the conditional probability distribution is analyzed for the internal structure of the eigenstates.In the rapidly rotating regime the ground state in angular momentum subspaces L=(q/2)N(N-1) with q=2,4 is found to exhibit the anticorrelation structure suggesting that it may variationally be described by a Bose–Laughlin like state.We further observe that the first breathing mode exhibits features similar to the Bose–Laughlin state in having eigenenergy,von Neumann entropy and internal structure independent of interaction for the three-boson system considered here.On the contrary,for eigenstates lying between the Bose–Laughlin like ground state and the first breathing mode,values of eigenenergy,von Neumann entropy and internal structure are found to vary with interaction. 展开更多
关键词 Bose–Einstein condensation exact diagonalization breathing mode Bose–Laughlin state von Neumann entropy conditional probability distribution
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Giant spin torque efficiency in single-crystalline antiferromagnet MnAu films
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作者 Shaohai Chen Xinyu Shu +6 位作者 Jing Zhou Chenghang Zhou Qidong Xie Tieyang Zhao Liang Liu Weinan Lin Jingsheng Chen 《Science China Materials》 SCIE EI CAS CSCD 2021年第8期2029-2036,共8页
Antiferromagnetic (AFM) materials have attracted wide attention in spin-orbit torque (SOT)-based spintronic due to its abundant spin-dependent properties and unique advantage of immunity against external field perturb... Antiferromagnetic (AFM) materials have attracted wide attention in spin-orbit torque (SOT)-based spintronic due to its abundant spin-dependent properties and unique advantage of immunity against external field perturbations.To act as the charge-to-spin conversion source in energy-saving spintronic devices,it is of great importance for the AFM material to possess a large spin torque efficiency(ξDL).In this work,using the spin torque ferromagnetic resonance (ST-FMR) technique and a Mn2Au/Ni Fe(Py) bilayer system,we systemically study the ξDLof AFM Mn2Au films with different crystal structures.Compared with polycrystalline Mn2Au with effective ξDL<0.051,we show a much larger ξDLof~0.333 in single-crystal Mn2Au,which arises from the large spin Hall conductivity instead of electrical resistivity.Moreover,with a further contribution of interfacial effects,the effective ξDLof single-crystalline Mn2Au/Py system increases to 0.731,which is more than two times larger than the value of ~0.22 reported for the Mn2Au/CoFeB system.By utilizing the largeξDLof Mn2Au in a perpendicularly magnetized Mn Ga/Mn2Au system,energy-efficient deterministic magnetization switching with a current density at ~10^(6)A cm^(-2)is achieved.Our results reveal a significant potential of Mn2Au as an efficient SOT source and shed light on its application in future AFM material-based SOT integration technology. 展开更多
关键词 ANTIFERROMAGNETIC spin torque efficiency electrical magnetization switching spin torque ferromagnetic resonance
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